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Index « MedMesh.i » - entrée « Candida albicans »
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Candida < Candida albicans < Candida glabrata  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 51.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000374 (2019) Yu-Wen Chen ; Ying-Chieh Yeh ; Hsueh-Fen Chen ; Ruei-Ching Chen ; Guan-Yu Lin ; Yu-Ting Chen ; Chung-Yu LanThe small GTPase Rhb1 is involved in the cell response to fluconazole in Candida albicans.
000507 (2018) Faiza Asghar ; Hongbo Yan ; Linghuo JiangThe putative transcription factor CaMaf1 controls the sensitivity to lithium and rapamycin and represses RNA polymerase III transcription in Candida albicans.
000540 (2018) Linghuo Jiang ; Hongbo PanFunctions of CaPhm7 in the regulation of ion homeostasis, drug tolerance, filamentation and virulence in Candida albicans.
000632 (2018) Jacob Fleischmann ; Miguel A. RochaNutrient depletion and TOR inhibition induce 18S and 25S ribosomal RNAs resistant to a 5'-phosphate-dependent exonuclease in Candida albicans and other yeasts.
000674 (2018) Nitesh Kumar Khandelwal ; Neeraj Chauhan ; Parijat Sarkar ; Brooke D. Esquivel ; Paola Coccetti ; Ashutosh Singh ; Alix T. Coste ; Meghna Gupta ; Dominique Sanglard ; Theodore C. White ; Murielle Chauvel ; Christophe D'Enfert ; Amitabha Chattopadhyay ; Naseem A. Gaur ; Alok Kumar Mondal ; Rajendra PrasadAzole resistance in a Candida albicans mutant lacking the ABC transporter CDR6/ROA1 depends on TOR signaling.
000803 (2017) Ning-Ning Liu ; Peter R. Flanagan ; Jumei Zeng ; Niketa M. Jani ; Maria E. Cardenas ; Gary P. Moran ; Julia R. KöhlerPhosphate is the third nutrient monitored by TOR in Candida albicans and provides a target for fungal-specific indirect TOR inhibition.
000A24 (2016) Iryna Bohovych ; Stavroula Kastora ; Sara Christianson ; Danelle Topil ; Heejeong Kim ; Teresa Fangman ; You J. Zhou ; Antoni Barrientos ; Jaekwon Lee ; Alistair J P. Brown ; Oleh KhalimonchukOma1 Links Mitochondrial Protein Quality Control and TOR Signaling To Modulate Physiological Plasticity and Cellular Stress Responses.
000B00 (2016) Rasmus Bojsen ; Birgitte Regenberg ; David Gresham ; Anders FolkessonA common mechanism involving the TORC1 pathway can lead to amphotericin B-persistence in biofilm and planktonic Saccharomyces cerevisiae populations.
000B07 (2016) Jinrong Feng ; Yinong Duan ; Wei Sun ; Yongwei Qin ; Zhong Zhuang ; Dandan Zhu ; Xiaolei Sun ; Linghuo JiangCaTip41 regulates protein phosphatase 2A activity, CaRad53 deactivation and the recovery of DNA damage-induced filamentation to yeast form in Candida albicans.
000B13 (2016) Yunying Zhao ; Hongbo Yan ; Ricardo Happeck ; Tina Peiter-Volk ; Huihui Xu ; Yan Zhang ; Edgar Peiter ; Chloë Van Oostende Triplet ; Malcolm Whiteway ; Linghuo JiangThe plasma membrane protein Rch1 is a negative regulator of cytosolic calcium homeostasis and positively regulated by the calcium/calcineurin signaling pathway in budding yeast.
000C04 (2015) Ana Gil-Bona ; Lucía Monteoliva ; Concha GilGlobal Proteomic Profiling of the Secretome of Candida albicans ecm33 Cell Wall Mutant Reveals the Involvement of Ecm33 in Sap2 Secretion.
000D80 (2014) Shih-Chin Cheng ; Jessica Quintin ; Robert A. Cramer ; Kelly M. Shepardson ; Sadia Saeed ; Vinod Kumar ; Evangelos J. Giamarellos-Bourboulis ; Joost H A. Martens ; Nagesha Appukudige Rao ; Ali Aghajanirefah ; Ganesh R. Manjeri ; Yang Li ; Daniela C. Ifrim ; Rob J W. Arts ; Brian M J W. Van Der Veer ; Brian M J W. Van Der Meer ; Peter M T. Deen ; Colin Logie ; Luke A. O'Neill ; Peter Willems ; Frank L. Van De Veerdonk ; Jos W M. Van Der Meer ; Aylwin Ng ; Leo A B. Joosten ; Cisca Wijmenga ; Hendrik G. Stunnenberg ; Ramnik J. Xavier ; Mihai G. NeteamTOR- and HIF-1α-mediated aerobic glycolysis as metabolic basis for trained immunity.
000F20 (2014) David L. Moyes ; Chengguo Shen ; Celia Murciano ; Manohursingh Runglall ; Jonathan P. Richardson ; Matthew Arno ; Estibaliz Aldecoa-Otalora ; Julian R. NaglikProtection against epithelial damage during Candida albicans infection is mediated by PI3K/Akt and mammalian target of rapamycin signaling.
001083 (2013) Chang Su ; Yang Lu ; Haoping LiuReduced TOR signaling sustains hyphal development in Candida albicans by lowering Hog1 basal activity.
001097 (2013) Jinrong Feng ; Yunying Zhao ; Yinong Duan ; Linghuo JiangGenetic interactions between protein phosphatases CaPtc2p and CaPph3p in response to genotoxins and rapamycin in Candida albicans.
001157 (2012) Yang Lu ; Chang Su ; Haoping LiuA GATA transcription factor recruits Hda1 in response to reduced Tor1 signaling to establish a hyphal chromatin state in Candida albicans.
001186 (2012) Teresa Zelante ; Rossana G. Iannitti ; Antonella De Luca ; Javier Arroyo ; Noelia Blanco ; Giuseppe Servillo ; Dominique Sanglard ; Utz Reichard ; Glen E. Palmer ; Jean-Paul Latgè ; Paolo Puccetti ; Luigina RomaniSensing of mammalian IL-17A regulates fungal adaptation and virulence.
001213 (2012) Yu-Ting Chen ; Chia-Ying Lin ; Pei-Wen Tsai ; Cheng-Yao Yang ; Wen-Ping Hsieh ; Chung-Yu LanRhb1 regulates the expression of secreted aspartic protease 2 through the TOR signaling pathway in Candida albicans.
001267 (2011) Yang Lu ; Chang Su ; Allen Wang ; Haoping LiuHyphal development in Candida albicans requires two temporally linked changes in promoter chromatin for initiation and maintenance.
001282 (2011) Sharon C-A Chen ; Russell E. Lewis ; Dimitrios P. KontoyiannisDirect effects of non-antifungal agents used in cancer chemotherapy and organ transplantation on the development and virulence of Candida and Aspergillus species.
001285 (2011) Julie Shareck ; Pierre BelhumeurModulation of morphogenesis in Candida albicans by various small molecules.

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